沸石
催化作用
介孔材料
苯甲醇
烷基化
扩散
化学
化学工程
相(物质)
液相
大规模运输
化学动力学
动力学
材料科学
热力学
有机化学
工程类
物理
量子力学
工程物理
作者
Dandan Xu,Omar Abdelrahman,Sang Hyun Ahn,Yasmine Guefrachi,Anatoliy Kuznetsov,Limin Ren,Son‐Jong Hwang,Maryam Khaleel,Saeed Al Hassan,Dongxia Liu,Suk Bong Hong,Paul J. Dauenhauer,Michael Tsapatsis
出处
期刊:Aiche Journal
[Wiley]
日期:2018-12-19
卷期号:65 (3): 1067-1075
被引量:33
摘要
Micro/meso/macroporous (hierarchical) zeolites show remarkable catalytic performance for reactions involving bulky reactants. However, quantitative assessment of the microstructural characteristics contributing to the observed performance remains elusive. Here, structure–activity relationships are established for a set of micro/mesoporous self‐pillared pentasil (SPP) zeolites using two parallel liquid‐phase reactions (benzyl alcohol alkylation and self‐etherification) based on analysis of mass transport and reaction kinetics. A reaction–diffusion mathematical model is developed that quantitatively assigns the catalytic contributions of the external surface and micropores of SPP zeolites for these reactions. In addition, the effect of the zeolite external surface structure on the corresponding catalytic activity is quantitatively assessed by comparing SPP zeolites (with MFI structure) with MCM‐22 (with MWW structure). This work demonstrates that reaction–diffusion modeling allows quantitative description of the catalytic performance of hierarchical zeolites and provides a model reaction to assess nm‐sized characteristic diffusion lengths in MFI. © 2018 American Institute of Chemical Engineers AIChE J , 65: 1067–1075, 2019
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